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开发和应用一种快速可视化检测万古霉素耐药肠球菌中 VanA 基因的技术。

Development and application of a rapid visual detection technique for VanA gene in vancomycin-resistant .

机构信息

Institute of Clinical Oncology, Lianyungang Hospital Affiliated to Kangda College of Nanjing Medical University, Lianyungang, China.

Department of Central Laboratory, The Second People's Hospital of Lianyungang (Cancer Hospital of Lianyungang), Lianyungang, China.

出版信息

mSphere. 2024 Oct 29;9(10):e0066624. doi: 10.1128/msphere.00666-24. Epub 2024 Sep 10.

Abstract

UNLABELLED

The objective of this study was to establish a rapid visual diagnosis method for vancomycin-resistant (VREFm) based on multienzyme isothermal rapid amplification (MIRA) combined with lateral flow strips (LFSs). The MIRA primers and probes were specifically designed to maintain the sequence of the VanA gene of VREFm. We optimized the reaction time and temperature and thoroughly assessed the specificity and sensitivity of the MIRA-LFS system. We also compared the MIRA-LFS method with the polymerase chain reaction (PCR) assay and the disc diffusion method. We then evaluated the MIRA-LFS assay for consistency testing and clinical application. The MIRA-LFS technique completed the amplification process within 30 min, and the results were observed on LFS. The method demonstrated high sensitivity, with a minimum detection limit of 1.066 CFU/µL for VREFm and exhibited specificity without cross-reactivity with other pathogenic bacteria. When applied to the detection of clinical samples, the method exhibited consistency with the PCR and agar dilution methods. The combined use of MIRA and LFS in this study facilitates simplifying the workflow for detecting VREFm, which is of great significance for rapidly detecting the enterococcal infections and preventing and controlling the nosocomial infections.

IMPORTANCE

One of the key approaches to treating and controlling vancomycin-resistant (VREFm) is an accurate and rapid diagnosis. To achieve this goal, a simple and rapid method must be constructed for immediate detection in the field. Multienzyme isothermal rapid amplification (MIRA) is an isothermal rapid amplification method that allows amplification reactions to be completed under room temperature conditions. When combined with lateral flow strips (LFSs), MIRA-LFS enables the rapid detection of pathogenic microorganisms. However, the MIRA method often produces false signals. These false signals are eliminated by using base mismatches introduced in primers and probes. The MIRA-LFS system was constructed with high specificity and sensitivity for the detection of VREfm, without the limitation of sophisticated instruments. This enables the prompt formulation of diagnostic and therapeutic decisions.

摘要

目的

本研究旨在建立一种基于多酶等温快速扩增(MIRA)联合侧流条(LFS)的万古霉素耐药(VREFm)快速可视化诊断方法。MIRA 引物和探针特异性设计用于保持 VREFm 的 VanA 基因序列。我们优化了反应时间和温度,并彻底评估了 MIRA-LFS 系统的特异性和敏感性。我们还将 MIRA-LFS 方法与聚合酶链反应(PCR)检测和纸片扩散法进行了比较。然后,我们评估了 MIRA-LFS 检测法的一致性测试和临床应用。MIRA-LFS 技术在 30 分钟内完成扩增过程,结果在 LFS 上观察到。该方法具有较高的灵敏度,VREFm 的最低检测限为 1.066 CFU/μL,且特异性高,与其他病原菌无交叉反应。当应用于临床样本检测时,该方法与 PCR 和琼脂稀释法具有一致性。本研究中 MIRA 和 LFS 的联合使用简化了检测 VREFm 的工作流程,对于快速检测肠球菌感染和预防控制医院感染具有重要意义。

重要性

治疗和控制万古霉素耐药(VREFm)的关键方法之一是进行准确和快速的诊断。为了实现这一目标,必须构建一种简单快速的方法,以便在现场立即进行检测。多酶等温快速扩增(MIRA)是一种等温快速扩增方法,允许在室温条件下完成扩增反应。当与侧流条(LFS)结合使用时,MIRA-LFS 可以快速检测致病微生物。然而,MIRA 方法通常会产生假信号。通过在引物和探针中引入碱基错配,可以消除这些假信号。MIRA-LFS 系统具有高度的特异性和敏感性,可用于检测 VREfm,且不受复杂仪器的限制。这可以促使迅速制定诊断和治疗决策。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4696/11520281/17c429e6792d/msphere.00666-24.f001.jpg

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